WO2017098877A1 - 情報処理装置、プログラム、情報処理装置によるカット設定方法、および印刷システム - Google Patents

情報処理装置、プログラム、情報処理装置によるカット設定方法、および印刷システム Download PDF

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Publication number
WO2017098877A1
WO2017098877A1 PCT/JP2016/084022 JP2016084022W WO2017098877A1 WO 2017098877 A1 WO2017098877 A1 WO 2017098877A1 JP 2016084022 W JP2016084022 W JP 2016084022W WO 2017098877 A1 WO2017098877 A1 WO 2017098877A1
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WO
WIPO (PCT)
Prior art keywords
cut
information
print image
mark
print medium
Prior art date
Application number
PCT/JP2016/084022
Other languages
English (en)
French (fr)
Japanese (ja)
Inventor
晃紀 辻
Original Assignee
セイコーエプソン株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by セイコーエプソン株式会社 filed Critical セイコーエプソン株式会社
Priority to CN201680071592.3A priority Critical patent/CN108369490A/zh
Priority to US16/060,348 priority patent/US20180367684A1/en
Publication of WO2017098877A1 publication Critical patent/WO2017098877A1/ja

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N1/00Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
    • H04N1/0035User-machine interface; Control console
    • H04N1/00405Output means
    • H04N1/00408Display of information to the user, e.g. menus
    • H04N1/00466Display of information to the user, e.g. menus displaying finishing information, e.g. position of punch holes or staple or orientation references
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J11/00Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form
    • B41J11/66Applications of cutting devices
    • B41J11/663Controlling cutting, cutting resulting in special shapes of the cutting line, e.g. controlling cutting positions, e.g. for cutting in the immediate vicinity of a printed image
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J11/00Devices or arrangements  of selective printing mechanisms, e.g. ink-jet printers or thermal printers, for supporting or handling copy material in sheet or web form
    • B41J11/66Applications of cutting devices
    • B41J11/70Applications of cutting devices cutting perpendicular to the direction of paper feed
    • B41J11/703Cutting of tape
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J3/00Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
    • B41J3/44Typewriters or selective printing mechanisms having dual functions or combined with, or coupled to, apparatus performing other functions
    • B41J3/46Printing mechanisms combined with apparatus providing a visual indication
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/12Digital output to print unit, e.g. line printer, chain printer
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/12Digital output to print unit, e.g. line printer, chain printer
    • G06F3/1201Dedicated interfaces to print systems
    • G06F3/1202Dedicated interfaces to print systems specifically adapted to achieve a particular effect
    • G06F3/1203Improving or facilitating administration, e.g. print management
    • G06F3/1205Improving or facilitating administration, e.g. print management resulting in increased flexibility in print job configuration, e.g. job settings, print requirements, job tickets
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/12Digital output to print unit, e.g. line printer, chain printer
    • G06F3/1201Dedicated interfaces to print systems
    • G06F3/1223Dedicated interfaces to print systems specifically adapted to use a particular technique
    • G06F3/1237Print job management
    • G06F3/1253Configuration of print job parameters, e.g. using UI at the client
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/12Digital output to print unit, e.g. line printer, chain printer
    • G06F3/1201Dedicated interfaces to print systems
    • G06F3/1223Dedicated interfaces to print systems specifically adapted to use a particular technique
    • G06F3/1237Print job management
    • G06F3/1253Configuration of print job parameters, e.g. using UI at the client
    • G06F3/1256User feedback, e.g. print preview, test print, proofing, pre-flight checks
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/12Digital output to print unit, e.g. line printer, chain printer
    • G06F3/1201Dedicated interfaces to print systems
    • G06F3/1278Dedicated interfaces to print systems specifically adapted to adopt a particular infrastructure
    • G06F3/1292Mobile client, e.g. wireless printing
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N1/00Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
    • H04N1/00127Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture
    • H04N1/0032Connection or combination of a still picture apparatus with another apparatus, e.g. for storage, processing or transmission of still picture signals or of information associated with a still picture with a medium handling apparatus, e.g. a sheet sorter
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N1/00Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
    • H04N1/0035User-machine interface; Control console
    • H04N1/00405Output means
    • H04N1/00408Display of information to the user, e.g. menus
    • H04N1/00411Display of information to the user, e.g. menus the display also being used for user input, e.g. touch screen
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N1/00Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
    • H04N1/0035User-machine interface; Control console
    • H04N1/00405Output means
    • H04N1/00408Display of information to the user, e.g. menus
    • H04N1/0044Display of information to the user, e.g. menus for image preview or review, e.g. to help the user position a sheet
    • H04N1/00461Display of information to the user, e.g. menus for image preview or review, e.g. to help the user position a sheet marking or otherwise tagging one or more displayed image, e.g. for selective reproduction

Definitions

  • the present invention relates to an information processing apparatus that displays a print image, a program, a cut setting method using the information processing apparatus, and a printing system.
  • a tape printer that displays a print image in which a character is printed on a tape member on a touch panel and sets a cut position for cutting the tape member based on an operation on the touch panel.
  • a full-cut cut position is set
  • a half-cut cut position is set.
  • the set cutting position is canceled (see Patent Document 1).
  • the inventor has found the following problems.
  • the conventional tape printer when setting the cut position, it is necessary to draw a vertical line from the vicinity of the upper end of the touch panel to the vicinity of the lower end, so that it takes time to draw the vertical line.
  • the conventional tape printer cannot change the set cutting position.
  • the conventional tape printer cannot change the cutting method (for example, change from full cut to half cut) with respect to the set cut position.
  • the conventional tape printer does not provide a user interface with high operability for an operation for setting a cutting position, an operation for changing a cutting position, or an operation for changing a cutting method.
  • the present invention relates to an information processing apparatus, program, and information processing apparatus capable of providing a user interface with high operability regarding an operation for setting a cut position, an operation for changing a cut position, or an operation for changing a cutting method. It is an object to provide a setting method and a printing system.
  • a display unit that displays a print image on a cut setting screen, a detection unit that is provided on the display unit and detects a tap position with respect to the cut setting screen, and a length direction of the print image
  • a cut information setting unit for setting cut information with a position on the print medium corresponding to a position on the print image overlapping with the detected tap position as a cut position at which the print medium is cut in the width direction of the print medium; It is provided with.
  • the display unit displays a print image on the cut setting screen
  • the detection unit provided to overlap the display unit detects a tap position with respect to the cut setting screen.
  • the position on the print medium corresponding to the position on the print image that overlaps the detected tap position in the length direction of the print image as a cut position at which the print medium is cut in the width direction of the print medium.
  • the cut position when a tap operation is performed on the cut setting screen, the position on the print medium corresponding to the position on the print image that overlaps the detected tap position in the length direction of the print image is determined as the cut position.
  • the cut information is set. For this reason, the user simply sets the cut position at a desired position by performing a tap operation at a position that overlaps the position on the print image corresponding to the desired position where the print medium is cut in the length direction of the print image. be able to. Therefore, according to this configuration, it is possible to provide a user interface with high operability regarding the operation of setting the cut position.
  • the display unit displays a cut mark indicating a cut position at a position on the print image that overlaps the detected tap position in the length direction of the print image.
  • the cut position specified by the set cut information can be represented on the print image by the cut mark.
  • the display unit displays the cut position when the character to be printed is displayed at the position on the print image that overlaps the detected tap position in the length direction of the print image on the cut setting screen. It is preferable to display a message for confirming whether to set.
  • the character when a character is displayed at a position on the print image that overlaps the detected tap position in the length direction of the print image, the character is displayed at a position on the print medium corresponding to the position.
  • the user can be alerted whether the position can be set.
  • the cut information setting unit corrects the cut position so that a margin is added to at least one of the front and rear in the length direction of the print medium with respect to the cut position specified by the cut information.
  • the display unit preferably displays a gauge image indicating a dimension in the length direction of the print image on the cut setting screen.
  • an index for determining a position for performing a tap operation or a position for performing a drag operation on the cut setting screen can be provided to the user.
  • the program of the present invention causes a computer to function as the above information processing apparatus.
  • the printing system of the present invention is an information processing apparatus and a printing system including a printing apparatus, and the information processing apparatus is provided with a display unit that displays a print image on a cut setting screen and a display unit that overlaps the display unit.
  • a detection unit that detects a tap position with respect to the screen, and a position on the print medium corresponding to a position on the print image that overlaps the detected tap position in the length direction of the print image.
  • a cutting information setting unit that sets cutting information as a cutting position to be cut, and a transmission unit that transmits the cutting information to the printing apparatus.
  • the printing apparatus receives the cutting information, and the receiving unit receives the cutting information. And a cut portion for cutting the print medium at a cut position defined by the cut information.
  • the print medium is cut at the cut position set based on the tap operation.
  • Another information processing apparatus of the present invention includes a display unit that displays a print image and a cut mark that indicates a cut position at which the print medium is cut in the width direction of the print medium on the cut setting screen, and the display unit overlaps the display unit.
  • the detection method for detecting the tap operation for the cut mark and the cut method for the print medium defined by the cut information corresponding to the cut mark when the tap operation for the cut mark is detected are changed to a different cut method.
  • a cut information setting unit to be changed.
  • the display unit displays a print image and a cut mark indicating a cut position where the print medium is cut in the width direction of the print medium on the cut setting screen.
  • a step a step of detecting a tap operation on the cut mark by a detection unit provided overlapping the display unit, and a print in which cut information corresponding to the cut mark is defined when a tap operation on the cut mark is detected Changing the cutting method for the medium to a different cutting method.
  • the display unit displays a plurality of types of cut marks having different cutting methods in different colors.
  • the cutting method specified by the cut information corresponding to the cut mark can be expressed by color.
  • the program of the present invention causes a computer to function as the above information processing apparatus.
  • Another information processing apparatus of the present invention includes a display unit that displays a print image and a cut mark that indicates a cut position at which the print medium is cut in the width direction of the print medium on the cut setting screen, and the display unit overlaps the display unit.
  • the length of the print image includes a detection unit that detects a drag completion position where the drag operation on the cut mark is completed on the cut setting screen, and a cut position defined by the cut information corresponding to the cut mark on which the drag operation has been performed.
  • a cut information setting unit that changes the position on the print medium corresponding to the position on the print image that overlaps the detected drag completion position in the vertical direction.
  • the display unit displays a print image and a cut mark indicating a cut position where the print medium is cut in the width direction of the print medium on the cut setting screen.
  • a step a detection unit provided overlapping the display unit detects a drag completion position where the drag operation on the cut mark is completed on the cut setting screen, and cut information corresponding to the cut mark on which the drag operation has been performed Changing the specified cut position to a position on the print medium corresponding to a position on the print image that overlaps with the detected drag completion position in the length direction of the print image.
  • the cut position defined by the cut information corresponding to the cut mark on which the drag operation has been performed is the detected drag completion position and printing.
  • the position is changed to a position on the print medium corresponding to the position on the print image that overlaps in the length direction of the image. For this reason, the user simply taps the cut mark until the position on the print image corresponding to the desired position at which the print medium is cut overlaps with the position in the length direction of the print image.
  • the cutting position can be changed. Therefore, according to this configuration, it is possible to provide a user interface with high operability regarding the operation of changing the cut position.
  • the program of the present invention causes a computer to function as the above information processing apparatus.
  • 1 is a diagram illustrating a printing system according to an embodiment of the present invention.
  • 1 is a block diagram of a printing system. It is a block diagram which shows the function structure of a device side control circuit. It is a flowchart which shows the flow of the process which a smart device performs. It is a figure which shows a character input screen. It is a flowchart showing the flow of cut setting processing executed by the smart device. It is a figure which shows a cut setting screen. It is a figure for demonstrating the cut information setting process in a cut setting process. It is a figure for demonstrating the cutting method change process in a cut setting process. It is a figure for demonstrating the cut position change process in a cut setting process. It is a figure which shows the cut setting screen where the message box was displayed. It is a figure which shows the label piece to which the margin was added before and after the cutting position. It is a figure which shows the cut setting screen where the gauge image was displayed.
  • the printing system SY will be described with reference to FIG.
  • the printing system SY includes a tape printer 1 and a smart device 2.
  • the tape printer 1 and the smart device 2 are wirelessly connected so that they can communicate with each other.
  • the tape printer 1 includes a cartridge mounting portion 11 and a tape discharge port 12.
  • the tape printer 1 performs printing and cutting on the tape T of the tape cartridge C mounted on the cartridge mounting unit 11 based on the image data and cut information received from the smart device 2.
  • the printed portion of the tape T discharged from the tape discharge port 12 is cut into a tape piece U (see FIGS. 8 to 10).
  • the tape T includes a tape main body Ta on which a printed image is printed, and a release paper Tb that is detachably attached to a sticking surface of the tape main body Ta.
  • the tape body Ta peeled off from the release paper Tb is attached as a label L to a desired location.
  • a smartphone or a tablet terminal can be used as the smart device 2.
  • An application program (hereinafter referred to as “corresponding application”) corresponding to the tape printer 1 is installed in the smart device 2.
  • the smart device 2 includes a touch panel 22.
  • the touch panel 22 detects a character input / edit operation by the user.
  • the character is a concept including characters, symbols, pictograms and the like.
  • the smart device 2 creates image data based on the input / editing operation detected by the touch panel 22 and transmits the image data and the cut information to the tape printer 1.
  • the tape printer 1 and smart device 2 will be described with reference to FIG.
  • the tape printer 1 includes a feed mechanism 13, a print head 14, a full cutter 151, a half cutter 152, a motor 16, a device-side interface 17, and a device-side control circuit 18.
  • the feeding mechanism 13 rotates a platen roller (not shown) accommodated in the tape cartridge C in a state where the tape cartridge C is mounted on the cartridge mounting portion 11. Thereby, the tape T and the ink ribbon (not shown) accommodated in the tape cartridge C are sent.
  • the print head 14 is driven to generate heat based on the received image data in a state where the tape T and the ink ribbon are sandwiched between the platen roller and the print head 14. Thereby, the ink of the ink ribbon is transferred to the tape T, and the character is printed on the tape T.
  • the full cutter 151 performs a full cut on the tape T.
  • the full cut means that both the tape body Ta and the release paper Tb are cut in the width direction of the tape T.
  • the printed portion of the tape T is cut off by this full cut.
  • the half cutter 152 performs a half cut on the tape T.
  • Half-cut refers to cutting the tape body Ta without cutting the release paper Tb. By this half cut, a cut Tc is formed in the tape T, and a plurality of labels L are provided on one tape piece U (see FIG. 9).
  • the motor 16 serves as a drive source for the feed mechanism 13, the full cutter 151, and the half cutter 152.
  • the device side interface 17 transmits and receives various commands and various data to and from the device side interface 24 described later.
  • the apparatus side control circuit 18 controls each part of the tape printer 1.
  • the apparatus-side control circuit 18 includes a CPU 181 (Central Processing Unit), a ROM 182 (Read Only Memory), and a RAM 183 (Random Access Memory).
  • the CPU 181 executes various processes by executing various programs stored in the ROM 182 using the RAM 183.
  • the smart device 2 includes a display 21, a touch panel 22, a device-side interface 24, and a device-side control circuit 25.
  • Display 21 displays various screens.
  • a color liquid crystal display is used.
  • the touch panel 22 is provided so as to overlap the display 21 and detects various touch operations of the user.
  • the device-side interface 24 transmits / receives various commands and various data to / from the device-side interface 17 described above.
  • the device side control circuit 25 controls each part of the smart device 2.
  • the device side control circuit 25 includes a CPU 251, a flash memory 252, and a RAM 253.
  • the CPU 251 executes various processes by executing various programs (including compatible applications) stored in the flash memory 252 using the RAM 253.
  • the RAM 253 includes a character string storage unit 254 and a cut information storage unit 255.
  • the character string storage unit 254 stores character string data.
  • the character string data is composed of a plurality of character data.
  • Each character data is composed of character code data input from the touch panel 22 by the user, and font data indicating the character font size and modification contents (for example, italic).
  • the cut information storage unit 255 stores the cut information set by the cut information setting unit 257 described later.
  • the cut information defines the cut position (distance from the tip of the tape T) and the cut method (full cut or half cut) where the tape T is cut in the tape printer 1.
  • the device-side control circuit 25 includes an image data creation unit 256 and a cut information setting unit 257. Each of these functional units is realized by cooperation of hardware constituting the device-side control circuit 25 and software such as a corresponding application stored in the flash memory 252.
  • the image data creation unit 256 creates image data based on the character string data stored in the character string storage unit 254.
  • the created image data is transmitted to the tape printer 1, and the tape printer 1 drives the print head 14 based on the received image data and performs printing on the tape T.
  • the cut information setting unit 257 sets and changes the cut information as will be described in detail later.
  • the set cut information is transmitted to the tape printer 1, and the tape printer 1 cuts the tape T based on the received cut information. That is, the tape printer 1 drives the cutter after feeding the tape T so that the cut position on the tape T specified by the cut information reaches the position of the cutter corresponding to the cutting method specified by the cut information. To do. Thus, the cutting is performed at the cutting position on the tape T specified by the cutting information by the cutting method specified by the cutting information.
  • the device side control circuit 25 displays the character input screen D1 on the display 21 in step S1.
  • a software keyboard D1a On the character input screen D1, a software keyboard D1a, a character input field D1b, a print button D1c, and a cut setting button D1d are displayed (see FIG. 5).
  • the device-side control circuit 25 proceeds to step S2, and determines whether or not a touch operation on the character input screen D1 is detected by the touch panel 22. If the device-side control circuit 25 determines that a touch operation has been detected (S2; Yes), it proceeds to step S3. If the device-side control circuit 25 determines that a touch operation has not been detected (S2; No), it repeats step S2 and waits for a touch operation on the character input screen D1.
  • step S3 the device-side control circuit 25 determines whether or not the touch operation detected in step S2 is a tap operation on the software keyboard D1a. If the device-side control circuit 25 determines that the tap operation is performed on the software keyboard D1a (S3; Yes), the process proceeds to step S4. On the other hand, when the device-side control circuit 25 determines that the tap operation is not performed on the software keyboard D1a (S3; No), the process proceeds to step S5.
  • the device-side control circuit 25 performs character input processing in step S4.
  • the device-side control circuit 25 stores code data corresponding to the key that has been tapped in the software keyboard D1a in the character string storage unit 254.
  • the character input field D1b an input character is displayed based on the code data stored in the character string storage unit 254.
  • the device-side control circuit 25 returns to step S2 and waits for a touch operation on the character input screen D1.
  • step S5 the device-side control circuit 25 determines whether or not the touch operation detected in step S2 is a tap operation on the cut setting button D1d. If the device-side control circuit 25 determines that the tap operation is performed on the cut setting button D1d (S5; Yes), the process proceeds to step S6. On the other hand, when the device-side control circuit 25 determines that the tap operation is not performed on the cut setting button D1d (S5; No), the process proceeds to step S7.
  • step S6 the device-side control circuit 25 performs a cut setting process described later. After completing the cut setting process, the device-side control circuit 25 returns to step S2 and waits for a touch operation on the character input screen D1.
  • step S7 the device-side control circuit 25 determines whether or not the touch operation detected in step S2 is a tap operation on the print button D1c. If the device-side control circuit 25 determines that the tap operation is performed on the print button (S7; Yes), the process proceeds to step S8. On the other hand, if the device-side control circuit 25 determines that the tap operation is not performed on the print button (S7; No), the process proceeds to step S9.
  • the device-side control circuit 25 performs print control processing in step S8.
  • the device-side control circuit 25 creates image data and transmits the image data and cut information to the tape printer 1.
  • the device-side control circuit 25 returns to step S2 and waits for a touch operation on the character input screen D1.
  • the device side control circuit 25 executes other processing in step S9. When completing the other processes, the device-side control circuit 25 returns to step S2 and waits for a touch operation on the character input screen D1.
  • step S11 the device-side control circuit 25 displays a cut setting screen D2.
  • a print image D2a, a cut mark M, a print button D2c, and a return button D2d are displayed (see FIG. 7).
  • the cut mark M indicates the cut position specified by the corresponding cut information on the print image D2a.
  • the cut mark M includes a full cut mark Mf and a half cut mark Mh.
  • the full cut mark Mf indicates that the cut method defined by the corresponding cut information is full cut. That is, the full cut mark Mf indicates that full cut is performed at that position.
  • the half cut mark Mh indicates that the cut method defined by the corresponding cut information is a half cut. That is, the half cut mark Mh indicates that half cut is performed at that position.
  • the full cut mark Mf and the half cut are displayed in different colors. For example, the full cut mark Mf is displayed in blue (black in the drawing), and the half cut mark Mh is displayed in yellow (gray in the drawing).
  • the device-side control circuit 25 proceeds to step S12 and determines whether or not a touch operation on the cut setting screen D2 is detected by the touch panel 22. If the device-side control circuit 25 determines that a touch operation has been detected (S12; Yes), it proceeds to step S13. If the device-side control circuit 25 determines that a touch operation has not been detected (S12; No), it repeats step S12 and waits for a touch operation on the cut setting screen D2.
  • step S13 the device-side control circuit 25 determines whether the touch operation detected in step S12 is a tap operation for an area other than the cut mark M, the print button D2c, and the return button D2d (hereinafter referred to as “other area”). Judge whether or not. If the device-side control circuit 25 determines that the tap operation is for another region (S13; Yes), the process proceeds to step S14. On the other hand, if the device-side control circuit 25 determines that the tap operation is not for another region ( S13; No), it proceeds to step S15.
  • the tap operation for the other area may be for the print image D2a or for the print image D2a.
  • the device-side control circuit 25 performs a cut information setting process described later in step S14. After completing the cut information setting process, the device-side control circuit 25 returns to step S12 and waits for a touch operation on the cut setting screen D2.
  • step S15 the device-side control circuit 25 determines whether or not the touch operation detected in step S12 is a tap operation on the cut mark M. If the device-side control circuit 25 determines that the tap operation is performed on the cut mark M (S15; Yes), the process proceeds to step S16. On the other hand, if the device-side control circuit 25 determines that the tap operation is not performed on the cut mark M (S15; No), the process proceeds to step S17.
  • step S16 the device-side control circuit 25 performs a cutting method changing process described later.
  • the device-side control circuit 25 completes the cutting method change process, the device-side control circuit 25 returns to step S12 and waits for a touch operation on the cut setting screen D2.
  • step S17 the device-side control circuit 25 determines whether or not the touch operation detected in step S12 is a drag operation (swipe operation) on the cut mark M.
  • the process proceeds to step S18.
  • the process proceeds to step S19.
  • step S18 the device-side control circuit 25 performs a cut position changing process to be described later.
  • the device-side control circuit 25 returns to step S12 and waits for a touch operation on the cut setting screen D2.
  • step S19 the device-side control circuit 25 determines whether or not the touch operation detected in step S12 is a tap operation on the print button D2c. If the device-side control circuit 25 determines that the tap operation is performed on the print button (S19; Yes), the process proceeds to step S20. On the other hand, if the device-side control circuit 25 determines that the tap operation is not performed on the print button (S19; No), the process proceeds to step S21.
  • the device-side control circuit 25 performs a print control process in step S20.
  • the device-side control circuit 25 creates image data and transmits the image data and cut information to the tape printer 1.
  • the process returns to step S12.
  • step S21 the device-side control circuit 25 determines whether or not the touch operation detected in step S12 is a tap operation on the return button D2d.
  • the device-side control circuit 25 determines that the tap operation is performed on the return button D2d (S21; Yes)
  • the device-side control circuit 25 returns to step S2 in the flowchart of FIG. 4 and waits for a touch operation on the character input screen D1.
  • the process proceeds to step S22.
  • the device-side control circuit 25 performs other processing in step S22. When completing the other processes, the device-side control circuit 25 returns to step S12 and waits for a touch operation on the cut setting screen D2.
  • the cut information setting process of step S14 in the flowchart of FIG. 6 will be described.
  • the cut information setting process is a process performed when a tap operation on another area is detected on the cut setting screen D2.
  • a description will be given using a print image D2a indicating a state where the character string “ABC123” is printed on the tape T.
  • the cut information storage unit 255 stores the cut information (hereinafter referred to as the cut method) in which the position behind “3” of “ABC123” is the cut position and the full cut is the cut method. "Cut information a”) is stored in advance.
  • the cut information setting unit 257 sets the position on the tape T corresponding to the position on the print image D2a that overlaps the detected tap position in the length direction of the print image D2a as the cut position. Set the cut information that uses full cut as the cutting method.
  • the length direction of the print image D2a means the length direction of the image of the tape T included in the print image D2a.
  • the display 21 displays the full cut mark Mf at a position on the print image D2a that overlaps the detected tap position in the length direction of the print image D2a.
  • the tap operation is performed on the position between “C” and “1” of “ABC123” in the length direction of the print image D2a on the cut setting screen D2.
  • the cut information setting unit 257 positions on the print image D2a that overlaps the tap position detected in the length direction of the print image D2a (position between “C” and “1” on the print image D2a).
  • the cut information corresponding to the position on the tape T (position between “C” and “1” on the tape T) and the full cut as the cutting method (hereinafter referred to as “cut information b”). ) Is set.
  • a position on the print image D2a that overlaps the tap position detected in the length direction of the print image D2a (position between “C” and “1” of the print image D2a) is displayed.
  • a full cut mark Mf is displayed.
  • the tape printer 1 After the cut information b is set in this way, when the print button D2c is tapped, the cut information a and the cut information b are transmitted to the tape printer 1. Based on the received cut information a and cut information b, the tape printer 1 performs a full cut at a position on the tape T specified by the cut information b, and performs a full cut at a position on the tape T specified by the cut information a. Do. That is, the tape printer 1 performs a full cut at a position between “C” and “1”, and performs a full cut at a position behind “3”. As a result, a tape piece U printed with “ABC” and a tape piece U printed with “123” are obtained.
  • the cutting method changing process of step S16 in the flowchart of FIG. 6 is a process performed when a tap operation on the cut mark M is detected on the cut setting screen D2.
  • the cut information setting unit 257 changes the cut method defined by the cut information corresponding to the cut mark M on which the tap operation has been performed, to another cut method. That is, when a tap operation is performed on the full cut mark Mf on the cut setting screen D2, the cut information setting unit 257 determines the full cut method defined by the cut information corresponding to the full cut mark Mf on which the tap operation has been performed. Change from cut to half cut. Similarly, when a tap operation is performed on the half-cut mark Mh on the cut setting screen D2, the cut information setting unit 257 specifies a cut method defined by the cut information corresponding to the half-cut mark Mh on which the tap operation has been performed. Change from half cut to full cut.
  • the display 21 displays the half cut mark Mh instead of the full cut mark Mf.
  • the display 21 displays the full cut mark Mf instead of the half cut mark Mh.
  • FIG. As described above, after the cut information b in which the position between “C” and “1” in “ABC123” is set as the cut position and the full cut is set as the cut method is set, FIG. As described above, it is assumed that the tap operation is performed on the full cut mark Mf corresponding to the cut information b on the cut setting screen D2. In this case, the cut information setting unit 257 changes the cut method defined by the cut information b corresponding to the full cut mark Mf on which the tap operation has been performed to half cut. In addition, a half cut mark Mh is displayed on the cut setting screen D2 instead of the full cut mark Mf.
  • the tape printer 1 Based on the received cut information a and cut information b, the tape printer 1 performs a half cut at a position on the tape T specified by the cut information b, and performs a full cut at a position on the tape T specified by the cut information a. Do. That is, the tape printer 1 performs a half cut at a position between “C” and “1” and performs a full cut at a position behind “3”. As a result, a cut Tc is formed at a position between “C” and “1”, and a label L printed with “ABC” and a label L printed with “123” are provided by the cut Tc.
  • the obtained tape piece U is obtained.
  • the cut position changing process of step S18 in the flowchart of FIG. 6 will be described.
  • the cut position changing process is a process performed when a drag operation on the cut mark M is detected on the cut setting screen D2.
  • the cut information setting unit 257 changes the cut position specified by the cut information corresponding to the cut mark M on which the drag operation has been performed.
  • the display 21 displays the cut mark M so as to move in accordance with the drag operation.
  • FIG. As described above, after the cut information b in which the position between “C” and “1” in “ABC123” is set as the cut position and the full cut is set as the cut method is set, FIG. As described above, it is assumed that the drag operation is performed to the position between “1” and “2” with respect to the full cut mark Mf corresponding to the cut information b on the cut setting screen D2. In this case, the cut information setting unit 257 prints the cut position defined by the cut information b corresponding to the full cut mark Mf on which the drag operation has been performed overlaps the drag completion position detected in the length direction of the print image D2a.
  • a position on the tape T (a position between “1” and “2” on the tape T) corresponding to a position on the image D2a (a position between “1” and “2” of the print image D2a).
  • the display 21 displays the full cut mark Mf so as to move in accordance with the drag operation.
  • the cut setting screen D2 has a position on the print image D2a that overlaps the drag completion position detected in the length direction of the print image D2a (position between “1” and “2” of the print image D2a).
  • the full cut mark Mf is displayed.
  • the tape printer 1 Based on the received cut information a and cut information b, the tape printer 1 performs a full cut at a position on the tape T specified by the cut information b, and performs a full cut at a position on the tape T specified by the cut information a. Do. That is, the tape printer 1 performs a full cut at a position between “1” and “2” and performs a full cut at a position behind “3”. As a result, a tape piece U printed with “ABC1” and a tape piece U printed with “23” are obtained.
  • the smart device 2 includes the display 21, the touch panel 22, and the cut information setting unit 257.
  • the display 21 displays the print image D2a on the cut setting screen D2.
  • the touch panel 22 is provided so as to overlap the display 21 and detects a tap position with respect to the cut setting screen D2.
  • the cut information setting unit 257 sets cut information in which the position on the tape T corresponding to the position on the print image D2a that overlaps the detected tap position in the length direction of the print image D2a is the cut position. According to this configuration, when a tap operation is performed on the cut setting screen D2, the position on the tape T corresponding to the position on the print image D2a that overlaps the detected tap position in the length direction of the print image D2a. Is set as cut information.
  • the user simply taps the position on the print image D2a corresponding to the desired position where the tape T is cut and the position where the tape T overlaps in the length direction of the print image D2a. Can be set. Therefore, according to this configuration, it is possible to provide a user interface with high operability regarding the operation of setting the cut position.
  • the display 21 displays the cut mark M at a position on the print image D2a that overlaps the detected tap position in the length direction of the print image D2a. According to this configuration, the cut position defined by the set cut information can be represented on the print image D2a by the cut mark M.
  • the smart device 2 of the present embodiment includes a display 21, a touch panel 22, and a cut information setting unit 257.
  • the display 21 displays the print image D2a and the cut mark M on the cut setting screen D2.
  • the touch panel 22 is provided so as to overlap the display 21 and detects a drag completion position where the drag operation on the cut mark M is completed on the cut setting screen D2.
  • the cut information setting unit 257 sets the cut position defined by the cut information corresponding to the cut mark M on which the drag operation has been performed on the print image D2a overlapping the detected drag completion position in the length direction of the print image D2a. Change to a position on the tape T corresponding to the position.
  • the cut position specified by the cut information corresponding to the cut mark M on which the drag operation has been performed is the detected drag completion.
  • the position is changed to a position on the tape T corresponding to a position on the print image D2a that overlaps the position in the length direction of the print image D2a. Therefore, the user simply performs a drag operation on the cut mark M to a position on the print image D2a corresponding to a desired position at which the tape T is cut and a position that overlaps in the length direction of the print image D2a.
  • the cutting position can be changed to a desired position. Therefore, according to this configuration, it is possible to provide a user interface with high operability regarding the operation of changing the cut position.
  • the smart device 2 of the present embodiment includes a display 21, a touch panel 22, and a cut information setting unit 257.
  • the display 21 displays the print image D2a and the cut mark M on the cut setting screen D2.
  • the touch panel 22 is provided so as to overlap the display 21 and detects a tap operation on the cut mark M.
  • the cut information setting unit 257 changes the cut method defined by the cut information corresponding to the cut mark M to a different cut method.
  • the cut method defined by the cut information corresponding to the cut mark M is changed to a different cut method. Therefore, the user can change the cutting method only by performing a tap operation on the cut mark M. Therefore, according to this configuration, it is possible to provide a user interface with high operability in the operation of changing the cutting method.
  • the display 21 displays two types of cut marks M (full cut mark Mf and half cut mark Mh) having different cutting methods in different colors.
  • the cutting method defined by the cut information corresponding to the cut mark M can be expressed by color. That is, when the user looks at the color of the cut mark M, the user can recognize whether a full cut or a half cut is performed at the cut position indicated by the cut mark M.
  • the full cutter 151 and the half cutter 152 are examples of “cut portions”.
  • the device-side interface 17 is an example of a “reception unit”.
  • the display 21 is an example of a “display unit”.
  • the touch panel 22 is an example of a “detection unit”.
  • the device side interface 24 is an example of a “transmission unit”.
  • the tape T is an example of a “print medium”.
  • the display 21 may display the message box B together with the full cut mark Mf.
  • “Yes” and “No” options are displayed together with a message “Do you want to set the cutting position at this position?”.
  • the cut information setting unit 257 moves the cut information setting unit 257 to a position on the print image D2a that overlaps the detected tap position (a position that overlaps “C” on the print image D2a).
  • Corresponding cut information having a cut position at a position on the tape T is set.
  • the display 21 continues to display the full cut mark Mf at a position on the print image D2a that overlaps the detected tap position (a position that overlaps “C” on the print image D2a). Note that the display 21 may change the display color, blinking state, and the like of the full cut mark Mf before and after the “Yes” option is tapped.
  • the cut information setting unit 257 does not set the cut information. Further, the display 21 erases the display of the full cut mark Mf displayed at the position on the print image D2a that overlaps the detected tap position (the position that overlaps “C” on the print image D2a).
  • the display 21 displays the message box B even when a drag operation is performed on the cut mark M to the position overlapping the character in the length direction of the print image D2a on the cut setting screen D2. Also good.
  • the cut position may be set at a position on the tape T corresponding to the position. Or can alert the user to attention.
  • the full cut or half cut is prevented from being performed at the position overlapping with the character. can do.
  • the smart device 2 has at least one of front and rear in the length direction of the tape T with respect to the cut position defined by the cut information set based on the touch operation on the cut setting screen D2.
  • a margin Ts may be added.
  • the image data creation unit 256 creates image data in which margins are added before and after the cut position specified by the set cut information.
  • the cut information setting unit 257 corrects the cut position so that the margin Ts is added to at least one of the front and rear in the length direction of the tape T with respect to the cut position specified by the cut information.
  • the display 21 may display a print image D2a with a margin Ts added to the cut position.
  • the display 21 may display a gauge image D2e on the cut setting screen D2.
  • the gauge image D2e shows the dimension in the length direction of the print image D2a.
  • the user when the user wants to create a label L having a predetermined length, the user is provided with an index for determining a position for performing the tap operation or the position for completing the drag operation on the cut setting screen D2. can do. For this reason, when the user wants to obtain a label L having a length of 5 cm, for example, the position on the gauge image D2e where the gauge image D2e indicates “5 cm”, or the position overlapping with this in the length direction of the print image D2a Just tap.
  • the cut information setting unit 257 cancels the cut information corresponding to the cut mark M instead of changing the cut method defined by the cut information corresponding to the cut mark M on which the tap operation has been performed. May be.
  • the display 21 turns off the display of the cut mark M.
  • the cut information setting unit 257 changes the cutting method defined by the cut information corresponding to the cut mark M, and performs the second tap operation. May be cancelled, the cut information corresponding to the cut mark M may be canceled.
  • the display 21 changes the display from, for example, the full cut mark Mf to the half cut mark Mh for the first tap operation on the cut setting screen D2, and the half cut for the second lap operation. The display of mark Mh is turned off.
  • the cut information setting unit 257 may set the cut method defined by the set cut information to half cut instead of full cut in the cut information setting process. In this case, when a tap operation is performed on another area on the cut setting screen D2, the display 21 displays a half cut mark Mh instead of the full cut mark Mf.
  • the smart device 2 cannot be cut in place of the cut mark M when the tape cartridge C containing the tape T that is restricted in cutting by the material, thickness, etc. is mounted in the tape printer 1. It may be possible to display on the display 21 a cut impossible mark indicating that the above is true. That is, the smart device 2 acquires cartridge information indicating the type of the tape cartridge C mounted on the tape printer 1 from the tape printer 1. The smart device 2 displays a cut impossible mark instead of the cut mark M when the acquired cartridge information represents the tape cartridge C in which the tape T that is restricted from being cut is stored.
  • the cut impossible mark is preferably a color (for example, red) different from the full cut mark Mf and the half cut mark Mh.
  • the display 21 confirms whether or not the user prints a cut line for cutting the tape T with scissors or the like at the position on the tape T corresponding to the uncuttable mark in the tape printer 1. A message may be displayed.
  • a personal computer including the touch panel 22 may be used instead of the smart device 2.
  • the printing system SY may include a printing device that performs printing on roll paper, for example, instead of the tape printing device 1 as a printing device.
  • the present invention provides an information processing apparatus as a program (for example, the above-mentioned corresponding application) that functions like the smart device 2 of the present embodiment, and a recording medium (CD-ROM, flash memory, etc.) that records the program. It is also possible to do.
  • a program for example, the above-mentioned corresponding application
  • a recording medium CD-ROM, flash memory, etc.
  • D2 ... Cut setting screen, D2a ... Print image, D2c ... Print button, D2d ... Return button, L ... Label, Mf ... Full cut mark, U ... Tape piece.

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  • Theoretical Computer Science (AREA)
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  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
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PCT/JP2016/084022 2015-12-10 2016-11-17 情報処理装置、プログラム、情報処理装置によるカット設定方法、および印刷システム WO2017098877A1 (ja)

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US16/060,348 US20180367684A1 (en) 2015-12-10 2016-11-17 Information processing device, program, cut setting method using information processing device, and printing system

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JP6756306B2 (ja) * 2017-06-15 2020-09-16 カシオ計算機株式会社 ラベルプリンタ、印刷方法及びラベルプリンタに用いられるプログラム
JP6929520B2 (ja) * 2017-09-28 2021-09-01 ブラザー工業株式会社 印刷装置及び印刷プログラム
JP7085111B2 (ja) * 2018-02-07 2022-06-16 大日本印刷株式会社 印刷操作端末、及びプリントシステム
CN109940682A (zh) * 2019-03-28 2019-06-28 上海中通吉网络技术有限公司 一种包牌打印切割方法、系统及打印机
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